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混合参考自旋翻转含时密度泛函理论(MRSF-TDDFT):一种用于双自由基和类双自由基的简单而精确的方法

Mixed-Reference Spin-Flip Time-Dependent Density Functional Theory (MRSF-TDDFT) as a Simple yet Accurate Method for Diradicals and Diradicaloids.

作者信息

Horbatenko Yevhen, Sadiq Saima, Lee Seunghoon, Filatov Michael, Choi Cheol Ho

机构信息

Department of Chemistry, Kyungpook National University, Daegu 702-701, South Korea.

Division of Chemistry and Chemical Engineering, California Institute of Technology, Pasadena, California 91125, United States.

出版信息

J Chem Theory Comput. 2021 Feb 9;17(2):848-859. doi: 10.1021/acs.jctc.0c01074. Epub 2021 Jan 5.

Abstract

Due to their multiconfigurational nature featuring strong electron correlation, accurate description of diradicals and diradicaloids is a challenge for quantum chemical methods. The recently developed mixed-reference spin-flip (MRSF)-TDDFT method is capable of describing the multiconfigurational electronic states of these systems while avoiding the spin-contamination pitfalls of SF-TDDFT. Here, we apply MRSF-TDDFT to study the singlet-triplet (ST) gaps in a series of well-known diradicals and diradicaloids. On average, MRSF displays a very high prediction accuracy of the adiabatic ST gaps with the mean absolute error (MAE) amounting to 0.14 eV. In addition, MRSF is capable of accurately describing the effect of the Jahn-Teller distortion occurring in the trimethylenemethane diradical, the violation of the Hund rule in a series of the didehydrotoluene diradicals, and the potential energy surfaces of the didehydrobenzene (benzyne) diradicals. A convenient criterion for distinguishing diradicals and diradicaloids is suggested on the basis of the easily obtainable quantities. In all of these cases, which are difficult for the conventional methods of density functional theory (DFT), MRSF shows results consistent with the experiment and the high-level computations. Hence, the present study documents the reliability and accuracy of MRSF and lays out the guidelines for its application to strongly correlated molecular systems.

摘要

由于其具有强电子关联的多组态性质,对双自由基和类双自由基进行精确描述对量子化学方法来说是一项挑战。最近发展的混合参考自旋翻转(MRSF)-TDDFT方法能够描述这些体系的多组态电子态,同时避免了SF-TDDFT的自旋污染问题。在此,我们应用MRSF-TDDFT来研究一系列著名双自由基和类双自由基中的单重态-三重态(ST)能隙。平均而言,MRSF对绝热ST能隙显示出非常高的预测精度,平均绝对误差(MAE)为0.14 eV。此外,MRSF能够准确描述三亚甲基甲烷双自由基中发生的 Jahn-Teller 畸变效应、一系列二脱氢甲苯双自由基中洪德规则的违反情况以及二脱氢苯(苯炔)双自由基的势能面。基于易于获得的量,提出了一种区分双自由基和类双自由基的便捷标准。在所有这些对传统密度泛函理论(DFT)方法来说具有挑战性的情况下,MRSF的结果与实验和高水平计算结果一致。因此,本研究证明了MRSF的可靠性和准确性,并为其应用于强关联分子体系制定了指导方针。

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